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首页> 外文期刊>Nanoscale >Hierarchical structures of AIOOH nanoflakes nested on Si nanopillars with anti-reflectance and superhydrophobicity
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Hierarchical structures of AIOOH nanoflakes nested on Si nanopillars with anti-reflectance and superhydrophobicity

机译:层次结构的AIOOH nanoflakes嵌套在Si nanopillars anti-reflectance和superhydrophobicity

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摘要

A novel method to fabricate ultra-low reflective Si surfaces with nanoscale hierarchical structures is developed by the combination of AiOOH or boehmite nanoflakes nested on plasma-etched Si nanopillars. Using CF4 plasma etching, Si surfaces are nanostructured with pillar-like structures by selective etching with self-masking by fluorocarbon residues. AIOOH nanoflakes are formed by Al thin film coating with various thicknesses and subsequent immersion in boiling water, which induces the formation of nanoscale flakes through the hydrolysis reaction. AIOOH nanoflakes are formed on Si nanopillared surfaces for hierarchical structures, which are coated with a low-surface-energy material, resulting in a higher water wetting angle of over 150° and a very low contact angle hysteresis of less than 5°, and implying a self-cleaning surface. Reflectance reduced to 5.18% on average on hierarchical nanostructures in comparison to 9.63% on the Si nanopillar surfaces only. We found that Si nanopillars reduced reflection for wavelengths ranging from 200 to 1200 nm while AIOOH nanoflakes reduced reflection for wavelengths longer than 600 nm.
机译:一个新颖的方法来制造超低反光如果表面纳米级层次结构是由的结合AiOOH或勃姆石nanoflakes嵌套plasma-etched Si nanopillars。蚀刻、Si表面纳米通过选择性刻蚀柱结构自掩蔽氟碳残留物。nanoflakes是由铝薄膜涂层各种厚度和随后的浸在沸水中,导致的形成纳米片通过水解反应。在Si nanopillared AIOOH nanoflakes形成表面的层次结构,涂有low-surface-energy材料,导致更高的水润湿角150°和很低的接触角滞后的不到5°,这意味着自洁表面。在层次相比,纳米结构仅9.63% Si nanopillar表面。发现如果nanopillars减少反射波长从200到1200纳米AIOOH nanoflakes减少反射波长超过600海里。

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